男女羞羞视频在线观看,国产精品黄色免费,麻豆91在线视频,美女被羞羞免费软件下载,国产的一级片,亚洲熟色妇,天天操夜夜摸,一区二区三区在线电影
Global EditionASIA 中文雙語Fran?ais
Business
Home / Business / Technology

AI key to medical innovation

By ZHENG YIRAN | China Daily | Updated: 2020-08-13 08:46
Share
Share - WeChat
Employees inspect products at a pharmaceutical plant in Tengzhou, Shandong province, in February. [Photo by Song Haicun/For China Daily]

Cutting-edge developments help cut corporate expenses, boost efficiency

Apart from facial recognition, telecommunication and Chinese chess matches, artificial intelligence is now being applied in pharmaceutical research and development to help scientists develop innovative drugs.

Hyper-dimension, a Beijing-based high-tech pharmaceutical company, is now using AI to find a possible cure for COVID-19.

It is currently working with the Institute of Materia Medica under the Chinese Academy of Medical Sciences to take advantage of AI to find a treatment for COVID-19 among existing drugs. The company said the project is running smoothly and a drug is expected to come into the market soon.

"Using AI, we run the testing model and see what kind of drug matches the protein of the novel coronavirus. Once the drug is fixed, we conduct bioassay to test the efficacy of the drug," said Qin Bingjie, chief executive officer of Hyper-dimension.

The company is also teaming up with another institute which has been working on the coronavirus for over 10 years to develop a new small molecule specific drug for COVID-19. The first phase of the cooperation is in process.

"As the novel coronavirus mutates very quickly, merely relying on vaccines is not enough. The fundamental solution is a specific drug," Qin said.

Traditional methods to develop innovative drugs are explored through the accumulated experiences of scientists through which they design the drugs and try them out one by one, according to Qin.

Generally, it takes 12 years and a large sum of money to develop an innovative drug. When AI is introduced into R&D through deep learning, machines take the place of scientists to design the drugs. As a result, the time to develop an innovative drug is reduced by two to three years and the cost is cut by half.

"Through traditional methods, it takes three years on average to lock onto a candidate compound. With the help of AI, it only needs one year," he said.

"The application of AI in drug R&D is an inevitable trend. Because of the high efficiency and accuracy of AI prediction, and its powerful data processing and computing capabilities, more and more people depend on AI technologies to develop innovative drugs," said a report from Beijing-based think tank EqualOcean.

"AI-based virtual testing and drug screening save corporate costs. The AI model using the physiological and pharmacological information in the big database can simulate and predict the experimental and clinical performance of the newly developed drug according to its own chemical characteristics, thereby greatly saving R&D costs," the report said.

Qin said that AI makes predictions such as the possible side effects before clinical tests, and helps avoid possible pitfalls in advance. If possible problems may occur, AI helps to modify the molecular structure of the drug. Therefore, the success rate of clinical trial is greatly increased.

Wai Keong Tang, director of the think tank committee of Macao Youth Association of Patriotic Education, said: "AI shortens the time of finding the target drug, as AI algorithms allow developers to quickly spot the best drug candidate for a target or molecular compounds of subsequent drug candidates, including protein sequence, molecular structure, and small molecule composition among others."

He said AI improves the success rate of finding innovative drugs. It makes it convenient to compare new drugs with old drugs to reduce the probability of failure in clinical trials and increases the success rate of each stage of drug development.

"In addition, AI lowers the costs and time to develop new drugs and new treatment solutions," he added.

Qin said that with the advancement of the industry, AI will be further applied to the R&D of innovative drugs. In addition, China has the environment to encourage pharmaceutical innovation, where generic drugs have limited development room, and enterprises are encouraged to develop innovative drugs.

"The future is promising," he said.

In the future, Tang said, a sharing platform can be established so researchers, enterprises and individuals can share and search for scientific literature and target data. They can then do a good job of processing and storing data sets, which is conducive in increasing the efficiency of researchers to use machine learning algorithms to identify data.

"Besides, favorable policies should be offered to enterprises for the development of new drugs and treatment plans for rare diseases and diseases with high treatment costs, helping them to overcome difficulties," he said.

Top
BACK TO THE TOP
English
Copyright 1995 - . All rights reserved. The content (including but not limited to text, photo, multimedia information, etc) published in this site belongs to China Daily Information Co (CDIC). Without written authorization from CDIC, such content shall not be republished or used in any form. Note: Browsers with 1024*768 or higher resolution are suggested for this site.
License for publishing multimedia online 0108263

Registration Number: 130349
FOLLOW US
CLOSE
 
主站蜘蛛池模板: 大冶市| 汕头市| 阿尔山市| 洛隆县| 二连浩特市| 延吉市| 乐山市| 海兴县| 台前县| 琼结县| 开远市| 紫云| 巢湖市| 察隅县| 渭南市| 咸阳市| 萨迦县| 加查县| 龙山县| 阿城市| 藁城市| 安丘市| 玉屏| 来安县| 正安县| 崇明县| 浦县| 峨山| 浮山县| 石景山区| 新丰县| 枝江市| 泸定县| 云霄县| 南安市| 安新县| 玛多县| 镇远县| 福贡县| 玉溪市| 长海县| 彭阳县| 萝北县| 吉安市| 新泰市| 新田县| 乌拉特中旗| 尼玛县| 瑞丽市| 南涧| 紫阳县| 横山县| 柯坪县| 铜梁县| 慈利县| 福海县| 兴仁县| 阿拉善盟| 千阳县| 鹿邑县| 棋牌| 枣庄市| 铜川市| 台东市| 商丘市| 闸北区| 玉林市| 安多县| 仲巴县| 定边县| 新龙县| 绥阳县| 杨浦区| 甘肃省| 保康县| 阳城县| 江达县| 甘泉县| 泰宁县| 萨迦县| 芜湖市| 德令哈市|